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Quasi-Dynamic Electromagnetic Field Safety Analysis and Mitigation for High-Power Dynamic Wireless Charging of Electric Vehicles

机译:电动汽车大功率动态无线充电的准动态电磁场安全分析与缓解

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Dynamic wireless charging of electric vehicles (EV) is an emerging charging technology to enable non-contact wireless charging while the vehicle is moving. Compared to stationary wireless charging, in-motion wireless charging involves dynamic processes in which an EV is passing over the charging pads (transmitters). This in-motion process makes the dynamic electromagnetic (EM) environment more complicated, and EM safety needs to be ensured under all circumstances. This is due to the fact that the entire vehicle body may be exposed to magnetic fields while the vehicle moves over the energized transmitter. This paper investigates several typical charging scenarios when EVs approach, pass over, and move away from the charging pads. Quasi-dynamic models, which are preliminarily verified by coils' inductance measurements, are developed to analyze the dynamic process. Based on the quasi-dynamic analysis, shielding solutions are also studied to ensure EM safety for the dynamic wireless charging processes.
机译:动态无线电动车辆(EV)是一种新兴的充电技术,可以在车辆移动时实现非接触无线充电。与静止无线充电相比,运动无线充电涉及动态过程,其中EV通过充电焊盘(发射机)。这种运动过程使动态电磁(EM)环境更复杂,并且在所有情况下需要确保EM安全性。这是由于在车辆在通电发射器上移动时整个车辆体可以暴露于磁场。本文调查当EVS接近,通过并远离充电垫时的几个典型充电情景。通过线圈电感测量预先验证的准动态模型是开发的,以分析动态过程。基于准动态分析,还研究了屏蔽解决方案,以确保动态无线充电过程的EM安全性。

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